Langerin+ DCs regulate innate IL-17 production in the oral mucosa during Candida albicans-mediated infection.
The opportunistic fungal pathogen Candida albicans frequently causes diseases such as oropharyngeal candidiasis (OPC) in immunocompromised individuals. Although it is well appreciated that the cytokine IL-17 is crucial for protective immunity against OPC, the cellular source and the regulation of th...
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doaj-a54913a11f8a4e03926a8002bb2197f52021-04-21T17:03:20ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742018-05-01145e100706910.1371/journal.ppat.1007069Langerin+ DCs regulate innate IL-17 production in the oral mucosa during Candida albicans-mediated infection.Florian SparberTamas DolowschiakSarah MertensLaura LauenerBjörn E ClausenNicole JollerPatrizia StoitznerRoxane TussiwandSalomé LeibundGut-LandmannThe opportunistic fungal pathogen Candida albicans frequently causes diseases such as oropharyngeal candidiasis (OPC) in immunocompromised individuals. Although it is well appreciated that the cytokine IL-17 is crucial for protective immunity against OPC, the cellular source and the regulation of this cytokine during infection are still a matter of debate. Here, we directly visualized IL-17 production in the tongue of experimentally infected mice, thereby demonstrating that this key cytokine is expressed by three complementary subsets of CD90+ leukocytes: RAG-dependent αβ and γδ T cells, as well as RAG-independent ILCs. To determine the regulation of IL-17 production at the onset of OPC, we investigated in detail the myeloid compartment of the tongue and found a heterogeneous and dynamic mononuclear phagocyte (MNP) network in the infected tongue that consists of Zbtb46-Langerin- macrophages, Zbtb46+Langerin+ dendritic cells (DCs) and Ly6C+ inflammatory monocytes. Of those, the Langerin+ DC population stands out by its unique capacity to co-produce the cytokines IL-1β, IL-6 and IL-23, all of which promote IL-17 induction in response to C. albicans in the oral mucosa. The critical role of Langerin+ DCs for the innate IL-17 response was confirmed by depletion of this cellular subset in vivo, which compromised IL-17 induction during OPC. In conclusion, our work revealed key regulatory factors and their cellular sources of innate IL-17-dependent antifungal immunity in the oral mucosa.https://doi.org/10.1371/journal.ppat.1007069 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Florian Sparber Tamas Dolowschiak Sarah Mertens Laura Lauener Björn E Clausen Nicole Joller Patrizia Stoitzner Roxane Tussiwand Salomé LeibundGut-Landmann |
spellingShingle |
Florian Sparber Tamas Dolowschiak Sarah Mertens Laura Lauener Björn E Clausen Nicole Joller Patrizia Stoitzner Roxane Tussiwand Salomé LeibundGut-Landmann Langerin+ DCs regulate innate IL-17 production in the oral mucosa during Candida albicans-mediated infection. PLoS Pathogens |
author_facet |
Florian Sparber Tamas Dolowschiak Sarah Mertens Laura Lauener Björn E Clausen Nicole Joller Patrizia Stoitzner Roxane Tussiwand Salomé LeibundGut-Landmann |
author_sort |
Florian Sparber |
title |
Langerin+ DCs regulate innate IL-17 production in the oral mucosa during Candida albicans-mediated infection. |
title_short |
Langerin+ DCs regulate innate IL-17 production in the oral mucosa during Candida albicans-mediated infection. |
title_full |
Langerin+ DCs regulate innate IL-17 production in the oral mucosa during Candida albicans-mediated infection. |
title_fullStr |
Langerin+ DCs regulate innate IL-17 production in the oral mucosa during Candida albicans-mediated infection. |
title_full_unstemmed |
Langerin+ DCs regulate innate IL-17 production in the oral mucosa during Candida albicans-mediated infection. |
title_sort |
langerin+ dcs regulate innate il-17 production in the oral mucosa during candida albicans-mediated infection. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS Pathogens |
issn |
1553-7366 1553-7374 |
publishDate |
2018-05-01 |
description |
The opportunistic fungal pathogen Candida albicans frequently causes diseases such as oropharyngeal candidiasis (OPC) in immunocompromised individuals. Although it is well appreciated that the cytokine IL-17 is crucial for protective immunity against OPC, the cellular source and the regulation of this cytokine during infection are still a matter of debate. Here, we directly visualized IL-17 production in the tongue of experimentally infected mice, thereby demonstrating that this key cytokine is expressed by three complementary subsets of CD90+ leukocytes: RAG-dependent αβ and γδ T cells, as well as RAG-independent ILCs. To determine the regulation of IL-17 production at the onset of OPC, we investigated in detail the myeloid compartment of the tongue and found a heterogeneous and dynamic mononuclear phagocyte (MNP) network in the infected tongue that consists of Zbtb46-Langerin- macrophages, Zbtb46+Langerin+ dendritic cells (DCs) and Ly6C+ inflammatory monocytes. Of those, the Langerin+ DC population stands out by its unique capacity to co-produce the cytokines IL-1β, IL-6 and IL-23, all of which promote IL-17 induction in response to C. albicans in the oral mucosa. The critical role of Langerin+ DCs for the innate IL-17 response was confirmed by depletion of this cellular subset in vivo, which compromised IL-17 induction during OPC. In conclusion, our work revealed key regulatory factors and their cellular sources of innate IL-17-dependent antifungal immunity in the oral mucosa. |
url |
https://doi.org/10.1371/journal.ppat.1007069 |
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